Simple Compact UWB Vivaldi Antenna Arrays for Breast Cancer Detection

Telecom Pub Date : 2024-04-08 DOI:10.3390/telecom5020016
Sahar Saleh, Tale Saeidi, Nick Timmons
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Abstract

In this study, at ultra-wideband (UWB) frequency band (3.1–10.6 GHz), we propose the use of compact 2:1 and 3:1 nonuniform transmission line Wilkinson power dividers (NTL WPDs) as feeding networks for simple 2 × 1 linear UWB Vivaldi tapered and nonuniform slot antenna (VTSA and VNSA) arrays. The 2:1 and 3:1 tapered transmission line (TTL) WPDs are designed and tested in this work as benchmarks for NTL WPDs. The VTSA array provides measured S11 < −10.28 dB at 2.42–11.52 GHz, with a maximum gain of 8.61 dBi, which is 24.39% higher than the single element. Using the VNSA array, we achieve 52% compactness and 6.76% bandwidth enhancement, with good measured results of S11 < −10.2 dB at 3.24–13 GHz and 15.11% improved gain (8.14 dBi) compared to the VNSA single element. The findings show that the NTL and Vivaldi nonuniform slot profile antenna (VNSPA) theories are successful at reducing the size of the UWB WPD and VTSA without sacrificing performance. They also emphasize the Vivaldi antenna’s compatibility with other circuits. These compact arrays are ideal for high-resolution medical applications like breast cancer detection (BCD) because of their high gain, wide bandwidth, directive stable radiation patterns, and low specific absorption rate (SAR). A simple BCD simulation scenario is addressed in this work. Detailed parametric studies are performed on the two arrays for impedance-matching enhancement. The computer simulation technology (CST) software is used for the simulation. Hardware measurement results prove the validity of the proposed arrays.
用于乳腺癌检测的简易紧凑型 UWB 维瓦尔第天线阵列
在本研究中,我们建议在超宽带(UWB)频段(3.1-10.6 GHz)使用紧凑型 2:1 和 3:1 非均匀传输线威尔金森功率分配器(NTL WPD),作为简单 2 × 1 线性 UWB 维瓦尔第锥形和非均匀槽天线(VTSA 和 VNSA)阵列的馈电网络。本研究设计并测试了 2:1 和 3:1 锥形传输线 (TTL) WPD,作为 NTL WPD 的基准。VTSA 阵列在 2.42-11.52 GHz 频段的实测 S11 < -10.28 dB,最大增益为 8.61 dBi,比单元件高 24.39%。使用 VNSA 阵列,我们实现了 52% 的紧凑性和 6.76% 的带宽增强,在 3.24-13 GHz 频率范围内取得了 S11 < -10.2 dB 的良好测量结果,与 VNSA 单元件相比,增益提高了 15.11% (8.14 dBi)。研究结果表明,NTL 和 Vivaldi 非均匀槽轮廓天线 (VNSPA) 理论成功地缩小了 UWB WPD 和 VTSA 的尺寸,同时不影响其性能。他们还强调了 Vivaldi 天线与其他电路的兼容性。由于具有高增益、宽带宽、定向稳定辐射模式和低比吸收率 (SAR),这些紧凑型阵列是乳腺癌检测 (BCD) 等高分辨率医疗应用的理想选择。本研究针对一个简单的 BCD 模拟场景。为增强阻抗匹配,对两个阵列进行了详细的参数研究。仿真采用了计算机仿真技术(CST)软件。硬件测量结果证明了拟议阵列的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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